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Progress and prospects in reverse electrodialysis for salinity gradient energy conversion and storage

机译:盐梯度能量转化和存储的反向电渗析研究进展与展望

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摘要

Salinity gradient energy is currently attracting growing attention among the scientific community as a renewable energy source. In particular, Reverse Electrodialysis (RED) is emerging as one of the most promising membrane-based technologies for renewable energy generation by mixing two solutions of different salinity. This work presents a critical review of the most significant achievements in RED, focusing on membrane development, stack design, fluid dynamics, process optimization, fouling and potential applications. Although RED technology is mainly investigated for energy generation from river water/seawater, the opportunities for the use of concentrated brine are considered as well, driven by benefits in terms of higher power density and mitigation of adverse environmental effects related to brine disposal. Interesting extensions of the applicability of RED for sustainable production of water and hydrogen when complemented by reverse osmosis, membrane distillation, bio-electrochemical systems and water electrolysis technologies are also discussed, along with the possibility to use it as an energy storage device. The main hurdles to market implementation, predominantly related to unavailability of high performance, stable and low-cost membrane materials, are outlined. A techno-economic analysis based on the available literature data is also performed and critical research directions to facilitate commercialization of RED are identified.
机译:目前,盐度梯度能源作为可再生能源正在引起科学界的越来越多的关注。特别地,通过混合两种盐度不同的溶液,反向电渗析(RED)成为最有希望的基于膜的可再生能源发电技术之一。这项工作对RED的最重要成就进行了严格的评述,重点是膜的开发,烟囱设计,流体动力学,工艺优化,结垢和潜在应用。尽管主要研究了RED技术来生产河水/海水中的能量,但也考虑到了浓盐水的使用机会,这是由更高功率密度和减轻与盐水处置有关的不利环境影响方面的利益所驱动的。还讨论了RED在反渗透,膜蒸馏,生物电化学系统和水电解技术的补充下,在可持续生产水和氢方面的适用性的有趣扩展,以及将其用作储能装置的可能性。概述了市场实施的主要障碍,主要与缺乏高性能,稳定和低成本的膜材料有关。还基于现有文献数据进行了技术经济分析,并确定了促进RED商业化的关键研究方向。

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